Identification of ionic currents at presynaptic nerve endings of the lizard.
- 1 July 1989
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 414 (1) , 201-222
- https://doi.org/10.1113/jphysiol.1989.sp017684
Abstract
1. Ionic currents associated with the invasion of an action potential into the motor nerve ending of the lizard, Anolis-carolinensis, were measured with a focal extracellular electrode at several locations along the nerve ending. 2. These experimentally observed currents could be matched with computer simulations of action potential propagation into the nerve ending. They revealed that while Na+ channels are the major ionic current pathway in the heminode, K+ channels provide the major pathway in the terminal branches and boutons. 3. Calcium current in the presynaptic ending was unmasked by the applciation of tetraethylammonium (TEA). This current was blocked by: (a) cadmium, (b) .omega.-conotoxin GVIA and (c) nifedipine, but was unaffected by nickel at concentrations less than or equal to 100 .mu.M. Nifedipine''s action became more definitive when the duration of the action potential was greatly extended by pre-treatment with TEA. The effect of Bay K 8644 was inconsistent. 4. Transmitter release, as measured by postsynaptic current, had a pharmacological response profile similar to that of the Ca2+ current, with the exception that transmitter release was increased reliably and reversibly by Bay K 8644. 5. This pharmacological response profile is identical to that of the L type Ca2+ channel identified by Fox, Nowycky and Tsien (1987a) in chick dorsal root ganglion neurones. We saw no evidence for more than a single type of Ca2+ channel in lizard motor nerve endings. 6. A calcium-activated K+ current IK(Ca) was revealed by application of 3,4-diaminopyridine (DAP), a delayed-rectifier K+ channel blocker. This K(Ca) current was blocked by TEA, charybdotoxin and by substitution of cobalt for extracellular calcium.This publication has 50 references indexed in Scilit:
- Involvement of DHP voltage-sensitive calcium channels and protein kinase C in thyroliberin (TRH) release by developing hypothalamic neurons in cultureBrain Research, 1988
- Bay K 8644 increases release of acetylcholine at the murine neuromuscular junctionBrain Research, 1987
- Osmotic Swelling of Vesicles: Its Role in the Fusion of Vesicles with Planar Phospholipid Bilayer Membranes and its Possible Role in ExocytosisAnnual Review of Physiology, 1986
- A model for exocytosis based on the opening of calcium-activated potassium channels in vesiclesLife Sciences, 1985
- Organization of Ion Channels in the Myelinated Nerve FiberScience, 1985
- Charybdotoxin, a protein inhibitor of single Ca2+-activated K+ channels from mammalian skeletal muscleNature, 1985
- The effects of dihydropyridines of neurotransmitter release from cultured neuronal cellsLife Sciences, 1984
- A venom peptide with a novel presynaptic blocking actionNature, 1984
- The Selective Inhibition of Delayed Potassium Currents in Nerve by Tetraethylammonium IonThe Journal of general physiology, 1967
- Anomalous Rectification in the Squid Giant Axon Injected with Tetraethylammonium ChlorideThe Journal of general physiology, 1965